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Mechanical energy and power flow of the upper extremity in manual wheelchair propulsion.

机译:手动轮椅推进中上肢的机械能和动力流。

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OBJECTIVE: To investigate the characteristics of mechanical energy and power flow of the upper limb during wheelchair propulsion. DESIGN: Mechanical energy and power flow of segments were calculated. BACKGROUND: Very few studies have taken into account the mechanical energy and power flow of the musculoskeletal system during wheelchair propulsion. Mechanical energy and power flow have proven to be useful tools for investigating locomotion disorders during human gait. METHODS: Twelve healthy male adults (mean age, 23.5 years) were recruited for this study. Three-dimensional kinematic and kinetic data of the upper extremity were collected during wheelchair propulsion using a Hi-Res Expert Vision system and an instrumented wheel, respectively. RESULTS: During the initiation of the propulsion phase, joint power is generated in the upper arm or is transferred from the trunk downward to the forearm and hand to propel the wheel forward. During terminal propulsion, joint power is transferred upward to the trunk from the forearm and upper arm. The rate of change of mechanical energy and power flow for the forearm and hand have similar patterns, but the upper arm values differ. CONCLUSIONS: Joint power plays an important role in energy transfer as well as the energy generated and absorbed by muscles spanning the joints during wheelchair propulsion. RELEVANCE: Energy and power flow information during wheelchair propulsion allows us to gain a better understanding of the coordination of the movement by the musculoskeletal system.
机译:目的:研究轮椅推进过程中上肢的机械能和动力流特征。设计:计算段的机械能和功率流。背景:很少有研究考虑到轮椅推进过程中肌肉骨骼系统的机械能和动力流。机械能和动力流已被证明是研究人步态运动障碍的有用工具。方法:本研究招募了十二名健康的男性成年人(平均年龄,23.5岁)。在轮椅推进过程中,分别使用Hi-Res Expert Vision系统和仪表轮收集了上肢的三维运动学和动力学数据。结果:在推进阶段开始期间,联合动力在上臂产生,或从躯干向下传递至前臂并用手推动车轮向前。在末梢推进过程中,关节动力从前臂和上臂向上传递到躯干。前臂和手的机械能和动力流的变化率具有相似的模式,但上臂值不同。结论:在轮椅推进过程中,关节力量在能量传递以及跨关节肌肉产生和吸收的能量中起着重要作用。相关性:轮椅推进过程中的能量和功率流信息使我们可以更好地了解肌肉骨骼系统对运动的协调。

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